Robotics, University of Science and Technology (UST), Daejon 34113, Korea.
Robotics R&D Department, Korea Institute of Industrial Technology (KITECH), Ansan 15588, Korea.
Sensors (Basel). 2022 Mar 17;22(6):2314. doi: 10.3390/s22062314.
When we develop wearable assistive devices, comfort and support are two main issues that need to be considered. In conventional design approaches, the degree of freedom of the wearer's joint movements tends to be oversimplified. Accordingly, the wearer's motion becomes restrained and bone/ligament injuries might occur in case of an unexpected fall. To mitigate these issues, this paper proposes a novel joint link mechanism inspired by a human spine structure as well as functionalities. The key feature of the proposed spine-like joint link mechanism is that hemispherical blocks are concatenated via flexible synthetic fiber lines so that their concatenation stiffness can be adjusted according to a tensile force. This feature has a great potentiality for designing a wearable assistive device that can support aged people's sit-to-stand action or augment spinal motion by regulating the concatenation stiffness. In addition, the concatenated hemispherical blocks enable the wearer to move his/her joint with full freedom, which in turn increases the wearer's mobility and prevents joint misalignment. The experimental results with a testbed and a pilot wearer substantiated that the spine-like joint link mechanism can serve as a key component in the design of wearable assistive devices for better mobility.
当我们开发可穿戴辅助设备时,舒适性和支撑性是需要考虑的两个主要问题。在传统的设计方法中,佩戴者关节运动的自由度往往过于简单化。因此,佩戴者的运动受到限制,并且在意外摔倒的情况下可能会发生骨骼/韧带损伤。为了解决这些问题,本文提出了一种受人体脊柱结构和功能启发的新型关节连杆机构。所提出的类似脊柱的关节连杆机构的关键特点是,通过柔性合成纤维线串联半球块,使得它们的串联刚度可以根据拉力进行调整。这种特性对于设计可穿戴辅助设备具有很大的潜力,这种设备可以通过调节串联刚度来支撑老年人的从坐到站动作或增强脊柱运动。此外,串联的半球块使佩戴者能够以完全自由的方式移动关节,从而提高佩戴者的活动能力并防止关节错位。通过测试平台和一个试用者的实验结果证实,类似脊柱的关节连杆机构可以作为可穿戴辅助设备设计中的关键组件,以提高其移动性。